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The measurement of motionless water surface shape using laser scanning and optical project methods

机译:使用激光扫描和光学项目方法测量一系列的水表面形状

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In order to study the possibility of machinery of small size using surface tension of liquid, the water surface shape should be measured precisely. When the object on water is relatively light, then the deformation of water surface would be somewhat small. In this case, a laser scanning method is proposed. By this method, we can get the shape of water surface through the measuring of slope of water surface. In order to get the shape of water surface, and also escape from precise calibration of measurement system, we proposed an iterative algorithm through which we can compute the shape of water surface precisely. If the object on water is relatively heavy, which can produce somewhat large deformation of water surface. In this case, we proposed to measure the shape of water surface by optical projection. Using an ordinary lamp as the background light, a numerical camera to collect the image of water surface from the side of transparent water vessel. Through image processing, the shape of water surface can be gotten. Comparing with theoretical calculation, the experiment results exhibit that the two methods all coincide with the theoretical one very well.
机译:为了使用液体表面张力研究小尺寸的机械的可能性,应精确测量水表面形状。当物体在水上相对较轻时,水表面的变形将稍微小。在这种情况下,提出了激光扫描方法。通过这种方法,我们可以通过测量水表面的测量来获得水面的形状。为了获得水面的形状,并且还逃避测量系统的精确校准,我们提出了一种迭代算法,我们可以精确地计算水表面的形状。如果水上的物体相对较重,这可能会产生稍大的水面变形。在这种情况下,我们提出通过光学投影测量水面的形状。使用普通灯作为背景光,从透明水容器侧收集水面图像的数值相机。通过图像处理,可以得到水面的形状。与理论计算相比,实验结果表明,这两种方法都与理论一致。

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